A fast two-dimensional FDTD full-wave analyser with adaptive mesh size

Abstract
A two-dimensional variable Yee's mesh algorithm with reduced grain size is proposed for the full-wave analysis of arbitrarily shaped guided wave structures. The method includes losses and allows the frequency selective application of the finite-difference time-domain method. The continuously variable mesh size in the x- and y-direction makes it possible to resolve partially fine circuit structures in both dimensions, while in other circuit sections a coarse mesh size can still be used.<>

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